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[Complex study of human cell strains with karyotype anomalies. II. Mitotic cycle parameters].

The object of this investigation were the parameters of the mitotic cycle in 14 fibroblasts-like cell strains with chromosome aberrations obtained from skin biopsies of patients and from spontaneous human abortuses. In two strains of embryonal origin (trisomic for chromosome and monosomic for chromosome 21) increased duration of stage G2 of the cell cycle accompanied by a shorter period of DNA synthesis was observed. In the other 5 strains of embryonal origin (two strains trisomic for chromosome 7, strains trisomic for chromosome 9, trisomic for chromosome 14 and triploid strains) no deviations from the normal duration of the stages of the cell cycle were observed. Two types of changes of the mitotic cycle parameters were observed in the cell strains obtained from patients with chromosome aberrations. A considerably prolonged G2 stage was observed in two strains obtained from patients affected by Down's syndrome. Three strains with the karyotypes 47, XXX, 47 XY+18 and 46, XX, 5p-were characterized by a complex of features typical of the strains of embryonal origin. A considerable decrease of the stage G2 duration was observed in these strains. In the strains obtained from a proband with Kleinfelter's syndrome and from a patient with the karyotype 46XX no deviations in the parameters of the cell cycle were observed.

Chromosome Aberrations

[Rate of progress of the 1st post-stimulation division of the mitotic cycle by cells of ascitic hepatoma 22A of different ages].

A study was made of the progress rate of cells of the ascitic hepatoma 22A of different age during the iirst mitotic cycle after the stimulation of division. The "ageing" (11-day), terminal (14-day), and "delayed" (4 days older than the terminal stage) ascitic fluids were used. The maximal values of the labeled nuclei index was found to be reached by 9--12 hours (it was mainly due to the transtion of the quiescent to the S-period) and the maximal mitotic index--by 18--21 hours after the inoculation, independently of the tumour age. These results suggest that the duration of both the prereplicative (G1) period and of the whole first mitotic cycle after the stimulation were independent of the time during which the cells of the ascitic hepatoma 22A were at the resting stage or at the very prolonged G1-period.

Animals

[Lactate dehydrogenase and malate dehydrogenase isoenzymes at different stages of the mitotic cycle in Ehrlich tumor cells].

LDH is represented in the tumor almost exclusively by an extremely slow migrating isozyme LDH-5. There is actually no LDH-1, LDH-2, LDH-3 in the spectrum, while LDH-4 is in small amounts. MDH is represented by cytoplasmic isozyme (S-MDH) and a mitochondrial fraction (m-MDH). The activity of LDH-5 and S-MDH is altered in a synchronous way: it shows a very sharp increase at the very beginning of the mitotic cycle and reaches the maximum value already by the mid-S-phase. The m-MDH activity through the cycle is enhanced twice: at the beginning of the cycle and following the termination of S-phase. There was found a direct correlation between the activity of m-MDH and the rate of anaerobic glycolysis through the mitotic cycle of Ehrlich tumor cells.

Animals

Luciferase-Based Reporter Assay for the Assessment of Aurora A-Kinase Activity in Mitotic Cycle.

Luciferase-based reporter assay is an important tool that employs bioluminescence to quickly and precisely investigate the gene of interest's promoter activity by reporter gene expression at the transcriptional level. The promoter of the gene of interest is fused with the reporter gene (a gene that produces luciferase enzymes) and then transfected into the cells. Luciferase is an enzyme that catalyzes a chemical reaction to produce light. The bioluminescence activity of the luciferase gene in the transfected cells is directly proportional to the expression of the gene of interest, which is measured by using a luminometer. In this chapter, we outline the use of a dual-reporter luciferase assay to measure Aurora A kinase activity during the mitotic cycle.

Genes, Reporter

Synthesis of 1,3-beta-glucanases in Saccharomyces cerevisiae during the mitotic cycle, mating, and sporulation.

Upon fractionating Saccharomyces cerevisiae asynchronous cultures by sucrose density gradient centrifugation in a zonal rotor and examining the exo-1,3-beta-glucanase and deoxyribonucleic acid content of the cells, a periodic step increase in the activity of this enzyme was observed, indicating a discontinuous pattern of synthesis or activation of exo-1,3-beta-glucanase during the mitotic cycle at the transition from the S to the G(2) phase. Similar results were obtained for endo-1,3-beta-glucanase by assaying activity against oxidized laminarin in permeabilized cells, suggesting that the synthesis of endo-1,3-beta-glucanase is controlled in the same way. When a and alpha strains were mated, the specific activity of cell extracts against laminarin, oxidized laminarin, and pustulan remained constant while zygote formation was taking place. However, when growth resumed, active synthesis of 1,3-beta-glucanases took place as shown by the occurrence of a significant increase in the specific activity against the three substrates. Specific changes in the level of glucan degradative enzymes, not observed in a haploid parental strain, occurred when the diploid S. cerevisiae AP-1 was induced to sporulate. The sporulation process triggered the activation of first the pustulan degradative capacity and then the capacity to hydrolyze oxidized laminarin. The specific activity against this substrate was 10 times higher than that against pustulan.

Conjugation, Genetic

Fluctuations in proline and other free amino acids during the mitotic cycle of the myxomycete Physarum polycephalum.

1. During synchronous growth of the acellular slime mould Physarum polycephalum the free amino pool had two maxima, one of 650 units [nmol/plasmodium dry weight (mg)] at metaphase and the other of 780 units in mid G2 with minima of 550 units before and after mitosis. 2. Proline formed 20--25% of the total pool with aspartic acid, glutamic acid, threonine, valine, leucine, lysine and arginine making up 55% of the pool. 3. The fluctuation of proline during the mitotic cycle was quite different from that of the other amino acids and was transiently very low during telophase.

Amino Acids

[Proliferative activity and the kinetics of the cell populations of chick embryo blastoderm in the period of gastrulation and early organogenesis. I. The proliferative activity and nature of the transition by mitotic cycle cells].

The intensity of entry of cells of different rudiments of the chick embryo in mitosis and S-phase at the stages of gastrulation and early organogenesis was studied by means of statmokinetic method and thymidine autoradiography. Regular changes in the percentage of cells entering mitosis and S-phase during development were found. The fluctuations of one index do not coincide often with those of another. The values of these indices within the limits of one rudiment may be interrelated in different ways. These interrelations change in their turn from one stage to another. A suggestion is put forward to the effect that the regular changes found represent a form of expression of parasynchronous proliferation pattern, related to the regular changes of the composition of cell polations due to unequal pasage of cells through the mitotic cycle.

Animals

Fine structure of the mitotic cycle of unfertilized sea urchin eggs activated by ammoniacal sea water.

Unfertilized sea urchin eggs enter a mitotic chromosome cycle after treatment with sea water containing ammonia. Centrioles cannot be found but microtubules are formed in the later stages of the cycle. The microtubules are displayed in an astral arrangement centered on clusters of osmiophilic bodies. In early stages, distinct kinetochores on the condensed chromosomes show no attachments to microtubules. Later, a few microtubules may be attached to the kinetochores. The chromosomes and microtubules are contained in a "clear zone", a large compact accumulation of membranes which displaces yolk particles and mitochondria, but not ribosomes, from that region of the cell. No bipolar spindle is formed.

Ammonia

[Effect of thyroxine on the duration of the phases of the hepatocyte mitotic cycle at different times of day].

The lengths of the synthetic phase (S) and postsynthetic gap plus a half of the mitotic time (G2+1/2 M) has been investigated in hepatocytes of control and thyroxine-treated male white rats using percent labeled mitosis curves after injection of isotope at 10, 16, 22 and 4 o'clock. In the control, the minimum lengths of G2 lasted 3.0 hours without being changed during 24 hours. On the contrary, G2+1/2 M and S varied from 3.2 to 4.4 and from 8.0 to 9.5 hours, accordingly. A prolonged administration or hormone induced changes in duration of all the above phases whose alterations in thyroxine-treated group of animals showed 2.0--3.0, 2.9--3.4 and 6.4--11.3 hours, respectively. During 24 hours, there was observed a characteristic pattern of changes in the labeling index (LI) of both groups of animals. It has been established for both the groups that the increased in LI coincides with the shortening of S-phase. The data allow to conclude that some intracycle mechanisms may exist controlling the cell division and exerting their effects on the cells at the end of G1-phase and during G2-phase. Thyroxine is a regulator of cell proliferation, and its effect was found to occur due to the intracycle mechanisms of cell cycle kinetics.

Animals

[Transformation of human embryonic cells by the Rous sarcoma virus and the polyomavirus depending on the mitotic cycle phase].

The whole cycle of skin-muscle embryonic human tissue culture is 18 hours, with phases S, G1, G2 and M being 7, 6, 4 and 1 hour, respectively. The mitotic index of this culture is 28%. The maximum sensitivity of these synchronized cell cultures to transforming activity of the Rous and Sindai viruses was observed in phase S. The infection of synchronized primary embryonic human fibroblasts in phase S with the polyoma virus together with the Sindai virus has resulted in single cases of transformation. Similar results were obtained with non-synchronized human cultures.

Adsorption

Reversible alterations in the mitotic cycle of chick embryo cells in various states of growth regulation.

Chick embryo cells which have been kept overnight at pH 6.8 in the absence of serum multiply very slowly. Only a small fraction of cells is in the S period at any given time, and the rate of uptake of 2-deoxy-D-glucose is very low. Upon raising the pH to 7.4 and adding serum ("turn-on") the uptake of 2-deoxy-D-glucose increases immediately; the rate of DNA synthesis increases after a lag of about 4 hours, and represents an increase in the fraction of cells synthesizing DNA. the uptake of 2-deoxy-D-glucose is rapidly returned to its original low rate at any time by again lowering the pH and removing serum ("turn-off"). The synthesis of DNA in the culture remains constant or continues to rise at a markedly reduced rate following the same treatment. Lowering pH or removing serum independently of each other is less efficient at inhibiting the increase in DNA synthesis than the combined treatment but each accomplishes a similar result. Cultures which have been "turned-off" during the early stages of the rapid increase in DNA synthesis, resume their prior rate of increase immediately if "turned-on" again within 2.5 hours. If the cultures have been "turned-off" for 5.5 hours before restoring the "turn-on", there is a 2 hour delay before they resume an increased rate of DNA synthesis. The results until shortly before, or at the time of the onset of the S period. Up to 96% of the cells in post-confluent cultures growing in conventional medium become labeled upon continuous, prolonged exposure to 3H-thymidine. Seventy-eight percent of the cells in serum-deprived cultures growing at a very low rate become labeled. These and other considerations suggest that the inhibition of cell multiplication by high population density or serum deprivation is caused by a lengthening of the time cells remain in the prereplicative G1 period rather than by shifting cells into a qualitatively distinct G0 period. There may, however, be a period common to all cells regardless of growth rate, in which cells are not progressing toward the S period. The length of this variable period would then determine the growth rate of a population of cells.

Animals

Studies on pulse-labelled RNA during the mitotic cycle of Physarum polycephalum by subnuclear fractionation.

A method is described for the isolation of pulse-labelled RNA from nuclei and subnuclear fractions of Physarum polycephalum. At all times during interphase the nucleolar RNA consisted mainly of a 34-S rRNA precursor with only small amounts of 26-S and 19-S rRNAs. The nucleoplasmic RNA consisted of predominantly mature 26-S rRNA with small amounts of 19-S rRNA and a 30-S RNA species. The 30-S RNA component displayed different labelling kinetics from the rRNA precursors. A low molecular weight RNA fraction (4-8 S) appeared to accumulate in the nucleus as interphase progressed.

Cell Nucleus

[The synchronizing effect of cyclic 3',5'-adenosine monophosphate on the mitotic cycle of Ehrlich ascitic carcinoma cells].

A study was made of the number of mitoses and of the DNA-synthesizing cells in the ascitic Ehrlich carcinoma in the course of 24 hours after the injection of cyclic 3',5'-adenosinmonophosphate to mice. It was found that as the result of the preprrophase inhibition and, possibly, of stimulation of the cell entry into the S-phase, 8 hours after the action a great number of cells began to divide almost simultaneously. The effect of mitosis synchronization was assessed in the tumour cell population.

Animals